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Design and Solidification of Fast-Releasing Clofazimine Nanoparticles for Treatment of Cryptosporidiosis

[Image: see text] Clofazimine, a lipophilic (log P = 7.66) riminophenazine antibiotic approved by the US Food and Drug Administration (FDA) with a good safety record, was recently identified as a lead hit for cryptosporidiosis through a high-throughput phenotypic screen. Cryptosporidiosis requires f...

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Autores principales: Zhang, Yingyue, Feng, Jie, McManus, Simon A., Lu, Hoang D., Ristroph, Kurt D., Cho, Eugene J., Dobrijevic, Ellen L., Chan, Hak-Kim, Prud’homme, Robert K.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2017
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5627342/
https://www.ncbi.nlm.nih.gov/pubmed/28929769
http://dx.doi.org/10.1021/acs.molpharmaceut.7b00521
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author Zhang, Yingyue
Feng, Jie
McManus, Simon A.
Lu, Hoang D.
Ristroph, Kurt D.
Cho, Eugene J.
Dobrijevic, Ellen L.
Chan, Hak-Kim
Prud’homme, Robert K.
author_facet Zhang, Yingyue
Feng, Jie
McManus, Simon A.
Lu, Hoang D.
Ristroph, Kurt D.
Cho, Eugene J.
Dobrijevic, Ellen L.
Chan, Hak-Kim
Prud’homme, Robert K.
author_sort Zhang, Yingyue
collection PubMed
description [Image: see text] Clofazimine, a lipophilic (log P = 7.66) riminophenazine antibiotic approved by the US Food and Drug Administration (FDA) with a good safety record, was recently identified as a lead hit for cryptosporidiosis through a high-throughput phenotypic screen. Cryptosporidiosis requires fast-acting treatment as it leads to severe symptoms which, if untreated, result in morbidity for infants and small children. Consequently, a fast-releasing oral formulation of clofazimine in a water-dispersible form for pediatric administration is highly desirable. In this work, clofazimine nanoparticles were prepared with three surface stabilizers, hypromellose acetate succinate (HPMCAS), lecithin, and zein, using the flash nanoprecipitation (FNP) process. Drug encapsulation efficiencies of over 92% were achieved. Lyophilization and spray-drying were applied and optimized to produce redispersible nanoparticle powders. The release kinetics of these clofazimine nanoparticle powders in biorelevant media were measured and compared with those of crystalline clofazimine and the currently marketed formulation Lamprene. Remarkably improved dissolution rates and clofazimine supersaturation levels up to 90 times equilibrium solubility were observed with all clofazimine nanoparticles tested. Differential scanning calorimetry indicated a reduction of crystallinity of clofazimine in nanoparticles. These results strongly suggest that the new clofazimine nanoparticles prepared with affordable materials in this low-cost nanoparticle formulation process can be used as viable cryptosporidiosis therapeutics.
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spelling pubmed-56273422017-10-05 Design and Solidification of Fast-Releasing Clofazimine Nanoparticles for Treatment of Cryptosporidiosis Zhang, Yingyue Feng, Jie McManus, Simon A. Lu, Hoang D. Ristroph, Kurt D. Cho, Eugene J. Dobrijevic, Ellen L. Chan, Hak-Kim Prud’homme, Robert K. Mol Pharm [Image: see text] Clofazimine, a lipophilic (log P = 7.66) riminophenazine antibiotic approved by the US Food and Drug Administration (FDA) with a good safety record, was recently identified as a lead hit for cryptosporidiosis through a high-throughput phenotypic screen. Cryptosporidiosis requires fast-acting treatment as it leads to severe symptoms which, if untreated, result in morbidity for infants and small children. Consequently, a fast-releasing oral formulation of clofazimine in a water-dispersible form for pediatric administration is highly desirable. In this work, clofazimine nanoparticles were prepared with three surface stabilizers, hypromellose acetate succinate (HPMCAS), lecithin, and zein, using the flash nanoprecipitation (FNP) process. Drug encapsulation efficiencies of over 92% were achieved. Lyophilization and spray-drying were applied and optimized to produce redispersible nanoparticle powders. The release kinetics of these clofazimine nanoparticle powders in biorelevant media were measured and compared with those of crystalline clofazimine and the currently marketed formulation Lamprene. Remarkably improved dissolution rates and clofazimine supersaturation levels up to 90 times equilibrium solubility were observed with all clofazimine nanoparticles tested. Differential scanning calorimetry indicated a reduction of crystallinity of clofazimine in nanoparticles. These results strongly suggest that the new clofazimine nanoparticles prepared with affordable materials in this low-cost nanoparticle formulation process can be used as viable cryptosporidiosis therapeutics. American Chemical Society 2017-09-20 2017-10-02 /pmc/articles/PMC5627342/ /pubmed/28929769 http://dx.doi.org/10.1021/acs.molpharmaceut.7b00521 Text en Copyright © 2017 American Chemical Society This is an open access article published under a Creative Commons Attribution (CC-BY) License (http://pubs.acs.org/page/policy/authorchoice_ccby_termsofuse.html) , which permits unrestricted use, distribution and reproduction in any medium, provided the author and source are cited.
spellingShingle Zhang, Yingyue
Feng, Jie
McManus, Simon A.
Lu, Hoang D.
Ristroph, Kurt D.
Cho, Eugene J.
Dobrijevic, Ellen L.
Chan, Hak-Kim
Prud’homme, Robert K.
Design and Solidification of Fast-Releasing Clofazimine Nanoparticles for Treatment of Cryptosporidiosis
title Design and Solidification of Fast-Releasing Clofazimine Nanoparticles for Treatment of Cryptosporidiosis
title_full Design and Solidification of Fast-Releasing Clofazimine Nanoparticles for Treatment of Cryptosporidiosis
title_fullStr Design and Solidification of Fast-Releasing Clofazimine Nanoparticles for Treatment of Cryptosporidiosis
title_full_unstemmed Design and Solidification of Fast-Releasing Clofazimine Nanoparticles for Treatment of Cryptosporidiosis
title_short Design and Solidification of Fast-Releasing Clofazimine Nanoparticles for Treatment of Cryptosporidiosis
title_sort design and solidification of fast-releasing clofazimine nanoparticles for treatment of cryptosporidiosis
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5627342/
https://www.ncbi.nlm.nih.gov/pubmed/28929769
http://dx.doi.org/10.1021/acs.molpharmaceut.7b00521
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